Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
605
datasets available to search
ShareScore release 0.9.0
Dataset results
605 results for “framing”
Framed Engraved Plate - Preview
For more information about this item visit: https://bhpsite.org/ Source: Objaverse 1.0 / Sketchfab
Figure 99. Consecutive frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 99. Consecutive frames from a 25fps video showing movement of the fan (arrows) by a male Maratus vespa during display in front of a female. Before the fan was rotated to the side (28-36), it was rotated from side to side in a more vertical position (1-24). During this sequence only the fan was moved. Each pedipalp was held to the side to display the black face and chelicerae.
Figure 100. Consecutive frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 100. Consecutive frames from a 25fps video of display by a male Maratus vespa, showing 'pincher' movement of legs III above the carapace (double or paired arrows at top), accompanied by limited movement of the fan from side to side (arrows) and some side-stepping (large arrows in 15, 16, 26). All arrows indicate movement relative to the previous frame. The pedipalps were held apart to reveal the black face and chelicerae during this display.
Figure 98. Selected frames from 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 98. Selected frames from 25fps video showing turns of a female M. vespa to face the center and flaps of a male fan. Arrows identify iridescent scales of the lobes or the anterior fan that the female appeared to follow with each turn.
Figure 76. Selected frames from three 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 76. Selected frames from three 25fps video recordings of rejection display by female Maratus tessellatus. 1-6, Arrows indicate slow waving of the extended leg LIII. 7-12, Arrows indicate movement of the opisthosoma as it was waggled. 13-24, Arrows indicate both waggling of the opisthosoma and waving of the extended leg LIII.
Figure 59. Sequential frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 59. Sequential frames from a 25fps video showing the display of a male Maratus lobatus in front of a female. Omitted frames represent intervals when the male did not move. Vibration of the fan and pedipalps is indicated with arrows.
Figure 72. Consecutive frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 72. Consecutive frames from a 25fps video recording of courtship display by a male Maratus tessellatus. Movement and vibration during this entire 1.56s interval was almost continuous. In other records there was less movement of legs III accompanied by intermittent vibration (~30/s vibrations at 0.5-1.0s intervals with legs III in a near vertical position).
Figure 44. Selected sequential frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 44. Selected sequential frames from a 25 fps video showing the courtship display of a male Maratus bubo. Rotation of the fan relative to the previous frame is indicated by upper arrows. Side-stepping relative to the previous frame is indicated by lower arrows.
Figure 15. Selected frames from a 25 in Seven new peacock spiders from Western Australia and South Australia (Araneae: Salticidae: Euophryini: Maratus)
Figure 15. Selected frames from a 25fps video showing sequential positions held during the display of a male Maratus albus.
Portal frame bridge video with semantic predictions
<p>This is a video representing how a 3D point cloud acquisition is made for a portal frame bridge. The predictions of a semantic segmentation model that are inferred during the point cloud acquisition are shown on the side. When the scanning of the bridge is complete, the 3D point cloud automatically includes the semantic label per 3D point, thanks to the semantic segmentation model. </p>
Discount Framed Humorous Advertisement
<p>It is the supplementary dataset for research titled as</p> <p>"Discount Framed Humorous Advertisement: An Exploratory Empirical Study"</p>
Figure 10. Sequential frames from a in Spiders of the mungaich group from Western Australia (Araneae: Salticidae: Euophryinae: Maratus), with one new species from Cape Arid
Figure 10. Sequential frames from a video study (23.976fps) of the displaying male holotype Maratus avibus covering a span of ~1s during a bout of rapid vibration that lasted for ~4s. 1-5, From a 'set' or starting position the male tilted its extended fan toward the rear then returned it to the set position with a period of ~0.08s. The extent of the rearward movement of the fan can be estimated by the 'flash' of bright blue that appeared at the top of the fan when it was rotated to the rear (frames 2, 4). 5- 13, In this interval the male continued the cycles of rearward rotation of the opisthosoma, but each rearward movement was accompanied by rapid vibration of legs III, alternately closing and opening the gap between the two legs. The speed of this movement could not be measured, but appears as a blur (frames 6, 8, 10, 12). 13-23, Here cycles alternating the set position with rapid movement of legs III continued, but with little movement of the fan. 23-25, The male again began to move the fan to the rear during each cycle.
Dataset from the study: "Brain Haemorrhage Detection using a SVM Classifier with Electrical Impedance Tomography Measurement Frames"
<p>This repository contains the scripts and other resources used in:</p> <p>“Brain Haemorrhage Detection using a SVM Classifier with Electrical Impedance Tomography Measurement Frames”, McDermott B et al. 10.1371/journal.pone.0200469</p> <p> </p> <p>>> THIS DATA IS FREE FOR USE IN ANY SCIENTIFIC RESEARCH WITH CITATION (PLEASE USE THE DOI FOR PRECISE CITATION): DOI 10.1371/journal.pone.0200469</p> <p> </p> <p>>> IF YOU USE THESE RESOURCES, CITE!!!</p> <p> </p> <p>The repository contains the code and resources to generate the EIT Measurement Frames used in Numerical Models (STL models, code to mesh, code to generate frames)</p> <p> </p> <p>Also included are the Measurement Frames generated from the Phantom Studies.</p> <p> </p> <p><strong>=> This is all the data (how to replicate it for numerical studies and the actual data for the phantom part) used in the study</strong></p> <p> </p> <p>Classifier generation, training, testing, cross validation etc uses standard MATLAB methods and resources: fitcsvm() etc.</p> <p> </p> <p>The subfolders are ordered numerically in the logical order of use</p> <p>The subfolders contain text files with more details and description relevant to the contents of the respective subfolder.</p> <p> </p> <p>Note:</p> <p> </p> <p>Software used in this study:</p> <p>At a minimum the first 2 will be needed to be installed on your computer</p> <p>(other methods etc needed are detailed within the folders)</p> <p> </p> <p><strong>MATLAB 2017B</strong> (<a href="https://uk.mathworks.com/products/matlab.html">https://uk.mathworks.com/products/matlab.html</a>):</p> <p>The primary software tool used throughout</p> <p> </p> <p><strong>EIDORS </strong>(<a href="http://eidors3d.sourceforge.net/index.shtml">http://eidors3d.sourceforge.net/index.shtml</a>)<strong>: </strong></p> <p>Open Source software package, compatible with MATLAB, with tools for use in Electrical Impedance Tomography studies.</p> <p> </p> <p><strong>Autodesk Fusion 360</strong> (<a href="https://www.autodesk.com/products/fusion-360/overview?mktvar002=685209&mkwid=sMHGuhLcc%7Cpcrid%7C209188650131%7Cpkw%7Cfusion%20360%7Cpmt%7Ce%7Cpdv%7Cc%7Cslid%7C%7Cpgrid%7C34851227038%7Cptaid%7Ckwd-11029869505%7C&intent=&utm_medium=cpc&utm_source=google&utm_campaign=GGL_Fusion+360_IE_BR_SEM&utm_term=fusion%20360&utm_content=sMHGuhLcc%7Cpcrid%7C209188650131%7Cpkw%7Cfusion%20360%7Cpmt%7Ce%7Cpdv%7Cc%7Cslid%7C%7Cpgrid%7C34851227038%7Cptaid%7Ckwd-11029869505%7C&gclid=Cj0KCQjw1NzZBRCoARIsAIaMwut5zqUE_d7oieOvw6H3SpU45Jw7vwL5KAKqyRYW20Be6QWE-V3HaB0aAnW0EALw_wcB">https://www.autodesk.com/products/fusion-360/overview?mktvar002=685209&mkwid=sMHGuhLcc|pcrid|209188650131|pkw|fusion%20360|pmt|e|pdv|c|slid||pgrid|34851227038|ptaid|kwd-11029869505|&intent=&utm_medium=cpc&utm_source=google&utm_campaign=GGL_Fusion+360_IE_BR_SEM&utm_term=fusion%20360&utm_content=sMHGuhLcc|pcrid|209188650131|pkw|fusion%20360|pmt|e|pdv|c|slid||pgrid|34851227038|ptaid|kwd-11029869505|&gclid=Cj0KCQjw1NzZBRCoARIsAIaMwut5zqUE_d7oieOvw6H3SpU45Jw7vwL5KAKqyRYW20Be6QWE-V3HaB0aAnW0EALw_wcB</a>):</p> <p>Used to generate the head, brain and lesion STL files. These final STL files are provided in this repository.</p>
Framing Ethical Concerns and Attitudes Towards Human Gene Patents in the Chinese Press
<p>The study analyzed the content of Chinese newspaper articles that relate to the patenting of human genes.</p>
FIGURE 5. Ophiactis modesta from the Persian Gulf. A, dorsal disc. B, oral frame. C, dorsal arm. D in New records of the brittle stars Ophiothela venusta and Ophiactis modesta (Echinodermata: Ophiuroidea) from the northern Persian Gulf, with morphological details
FIGURE 5. Ophiactis modesta from the Persian Gulf. A, dorsal disc. B, oral frame. C, dorsal arm. D, ventral arm. Abbreviations as in fig. 4, and DAP, dorsal arm plate, TS, tentacle scale. Scale bars in millimetre.
Plasticity in Collective Decision-Making for Robots: Creating Global Reference Frames, Detecting Dynamic Environments, and Preventing Lock-ins
<p>Swarm robots operate as autonomous agents and a swarm as a whole gets autonomous by its capability of collective decision-making.<br> Despite intensive research on models of<br> collective decision-making, the implementation in multi-robot systems is still challenging.<br> Here, we advance the state of the art by introducing more plasticity to the decision-making process and by increasing the task difficulty.<br> Most studies on large-scale multi-robot decision-making are limited to one instance of an iterated exploration-dissemination phase followed by successful and permanent convergence.<br> We investigate a dynamic environment that requires constant collective monitoring of option qualities.<br> Once a significant change in qualities is detected by the swarm, it has to collectively reconsider its previous decision accordingly.<br> This is only possible by preventing lock-ins, a global consensus state of no return.<br> In addition, we introduce a task of increased difficulty as the robots must locate themselves to assess the quality of an option.<br> Using local communication, swarm robots propagate hop-count information throughout the swarm to form a global reference frame.<br> We successfully validate our implementation in many swarm robot experiments concerning robustness to disruptions of the reference frame, scalability, and adaptivity to a dynamic environment.</p>
EMA (Experimental Modal Analysis) of Concept Car Frame
<p>Result file of EMA measurement of Concept Car frame.</p>
Persistent paradigm: the framing of Extinction Rebellion protests in the UK press
<p>Data relating to journal article for Environmental Communication, entitled "Persistent paradigm: the framing of<br> Extinction Rebellion protests in the UK press". The journal article examines sourcing and frames in the coverage of Extinction Rebellion in four UK newspapers, the Guardian, Mirror, Telegraph and Mail. This dataset comprises:<br> - newspaper articles from the Daily Mail (pdf)<br> - newspaper articles from the Daily Telegraph (pdf)<br> - newspaper articles from the Guardian (pdf)<br> - newspaper articles from the Daily Mirror (pdf)<br> - coding sheet of sources identified in coverage (.xls)<br> - coding sheet of frames identified (.xls)</p> <p> </p>
FIG. 4. Frames from a in Pelvic-Fan Flaring and Inflation in the Three-Tooth Puffer, Triodon macropterus (Tetraodontiformes: Triodontidae), with Additional Observations on Their Behavior in Captivity
FIG. 4. Frames from a video of Triodon macropterus, Fish 3 (320 mm SL), recorded during the night (1900–0400 hours) of 16 to 17 November 2020 at the Okinawa Churaumi Aquarium. Frames A–U show behaviors that occurred during a 1:11 minute interval that included 13 buccal cavity expansions and 11 pump-like expansions and retractions of the pelvic fan. We term this behavior pump flaring. No inflation occurred. Supplemental Video 2 (see Data Accessibility) was the basis for this figure.
FIG. 5. Frames from a in Pelvic-Fan Flaring and Inflation in the Three-Tooth Puffer, Triodon macropterus (Tetraodontiformes: Triodontidae), with Additional Observations on Their Behavior in Captivity
FIG. 5. Frames from a video of Triodon macropterus, Fish 2 (376 mm SL), inflating underwater during handling for Trial 4 at the Okinawa Churaumi Aquarium. The kinematic record of this trial is shown in Figure 3F. During this 2:59 minute sequence, the fish buccal pumped water into the stomach for inflation. As the abdomen expanded, the position of the ocellus changed (white arrows; changes in the position of the ocellus are primarily the result of inflation and not further pelvicfan flaring). (A) At 27 seconds into the trial, Fish 2 showed no external signs of inflation. (B) At 49 seconds, external signs of inflation became visible. (C) At 01:19 minutes into being held, the fish was moderately inflated because water had been buccal pumped for inflation into the
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.